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Airway mucins promote immunopathology in virusexacerbated chronic obstructive pulmonary disease

  • Aran Singanayagam
  • , Joseph Footitt
  • , Matthias Marczynski
  • , Giorgia Radicioni
  • , Michael T. Cross
  • , Lydia J. Finney
  • , Maria Belen Trujillo-Torralbo
  • , Maria Calderazzo
  • , Jie Zhu
  • , Julia Aniscenko
  • , Thomas B. Clarke
  • , Philip L. Molyneaux
  • , Nathan W. Bartlett
  • , Miriam F. Moffatt
  • , William O. Cookson
  • , Jadwiga Wedzicha
  • , Christopher M. Evans
  • , Richard C. Boucher
  • , Mehmet Kesimer
  • , Oliver Lieleg
  • Patrick Mallia, Sebastian L. Johnston
  • National Heart and Lung Institute
  • Imperial College London
  • School of Engineering and Design
  • Technical University of Munich
  • University of North Carolina
  • University of Colorado Denver School of Medicine
  • University of Newcastle, Faculty of Health and Medicine

Research output: Contribution to journalArticlepeer-review

70 Scopus citations

Abstract

The respiratory tract surface is protected from inhaled pathogens by a secreted layer of mucus rich in mucin glycoproteins. Abnormal mucus accumulation is a cardinal feature of chronic respiratory diseases, but the relationship between mucus and pathogens during exacerbations is poorly understood. We identified elevations in airway mucin 5AC (MUC5AC) and MUC5B concentrations during spontaneous and experimentally induced chronic obstructive pulmonary disease (COPD) exacerbations. MUC5AC was more sensitive to changes in expression during exacerbation and was therefore more predictably associated with viral load, inflammation, symptom severity, decrements in lung function, and secondary bacterial infections. MUC5AC was functionally related to inflammation, as Muc5ac-deficient (Muc5ac-/-) mice had attenuated RV-induced (RV-induced) airway inflammation, and exogenous MUC5AC glycoprotein administration augmented inflammatory responses and increased the release of extracellular adenosine triphosphate (ATP) in mice and human airway epithelial cell cultures. Hydrolysis of ATP suppressed MUC5AC augmentation of RV-induced inflammation in mice. Therapeutic suppression of mucin production using an EGFR antagonist ameliorated immunopathology in a mouse COPD exacerbation model. The coordinated virus induction of MUC5AC and MUC5B expression suggests that non-Th2 mechanisms trigger mucin hypersecretion during exacerbations. Our data identified a proinflammatory role for MUC5AC during viral infection and suggest that MUC5AC inhibition may ameliorate COPD exacerbations.

Original languageEnglish
Article numbere120901
JournalJournal of Clinical Investigation
Volume132
Issue number8
DOIs
StatePublished - 15 Apr 2022

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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